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未融合芳香二价阳离子在AT和GC序列中的不同结合模式。

Different binding mode in AT and GC sequences for unfused-aromatic dications.

作者信息

Tanious F A, Spychala J, Kumar A, Greene K, Boykin D W, Wilson W D

机构信息

Department of Chemistry, Georgia State University, Atlanta 30303.

出版信息

J Biomol Struct Dyn. 1994 Apr;11(5):1063-83. doi: 10.1080/07391102.1994.10508053.

DOI:10.1080/07391102.1994.10508053
PMID:7946061
Abstract

We have previously synthesized a 2,5-diphenylfuranamidine dication (4) and presented evidence that this compound binds to AT sequences in DNA by a minor-groove interaction mode but binds to GC sequences by intercalation (1,2). To probe these sequence-dependent binding modes in more detail, and particularly to obtain additional evidence for the binding mode in GC rich sequences, we have synthesized and studied the DNA complexes of 1-3 which have the furan ring of 4 replaced by 2,6-substituted pyridine (1), pyrimidine (2), or triazine (3) ring systems. The three compounds with a six-membered central ring system bind to AT DNA sequences more weakly than the furan compound, but retain the minor-groove binding mode. The pyridine and pyrimidine derivatives bind to GC sequences of DNA more strongly than the furan, but the triazine derivative binds more weakly. The aromatic proton signals of 1-3, as previously observed with 4 shift upfield by approximately 0.5 ppm or greater on complex formation with polyd(G-C)2. This and other spectroscopic as well as viscosity and kinetics results indicate that 1-4 bind to GC sites in DNA by intercalation. A nonclassical intercalation model, with the twisted-unfused, aromatic ring system intercalated into an intercalation site of matching structure can explain all of our and the literature results for the GC binding mode of these unfused, aromatic compounds.

摘要

我们之前合成了一种2,5-二苯基呋喃脒双阳离子(4),并提供了证据表明该化合物通过小沟相互作用模式与DNA中的AT序列结合,但通过嵌入作用与GC序列结合(1,2)。为了更详细地探究这些序列依赖性结合模式,特别是为了获得富含GC序列中结合模式的更多证据,我们合成并研究了1-3与DNA形成的复合物,其中1-3将4的呋喃环分别替换为2,6-取代的吡啶(1)、嘧啶(2)或三嗪(3)环系。这三种具有六元中心环系的化合物与AT DNA序列的结合比呋喃化合物弱,但保留了小沟结合模式。吡啶和嘧啶衍生物与DNA的GC序列的结合比呋喃更强,但三嗪衍生物的结合较弱。正如之前在4中观察到的那样,1-3的芳族质子信号在与聚d(G-C)2形成复合物时,会向上场移动约0.5 ppm或更多。这以及其他光谱学、粘度和动力学结果表明,1-4通过嵌入作用与DNA中的GC位点结合。一种非经典的嵌入模型,即扭曲的未稠合芳族环系嵌入到具有匹配结构的嵌入位点中,可以解释我们以及文献中关于这些未稠合芳族化合物GC结合模式的所有结果。

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